Programs executed as both prime and supporting partner across multiple mission classes.
Odyssey Space applies integrated engineering across optical systems, payloads, and mission architecture, enabling systems to move from early design through fabrication, integration, and validated performance.
Capabilities support programs across LEO platforms, commercial space stations, cislunar missions, and deep-space exploration.
Mission Engineering & Architecture
Mission architecture, system design, and requirements development across spacecraft and payload systems.
Mission concept development and trade studies
System architecture and requirements definition
Spacecraft-payload interface design
End-to-end mission lifecycle support
Payload & Instrument Systems
Design and development of spaceflight instruments and advanced sensing systems.
Optical payloads and scientific instrumentation
Detector and focal plane integration
Calibration hardware and measurement systems
Environmental and operational performance design
Optical & Optomechanical Systems
Precision optical systems for ground and space-based applications.
Optical system design and performance modeling
Stray light and tolerancing analysis
Optomechanical design and fabrication support
Alignment, calibration, and verification planning
Flight Systems & Integration
Integration of payloads and instruments into flight-ready systems.
Spacecraft and payload integration
ISS, LEO platforms, and commercial space stations
Cislunar and deep space mission integration
Subsystem validation and performance verification
Assembly, Integration & Test (AIT)
Validation of system performance prior to flight.
Precision assembly and alignment
Environmental and functional testing
Metrology and calibration verification
End-to-end system validation
Program Leadership & Mission Execution
Program management, technical leadership, and mission delivery.
Program and technical leadership across multidisciplinary teams
Proposal development and capture strategy
Government and commercial program execution
Partner coordination and mission delivery
(New) AI-Enabled Mission Optimization
Advanced modeling and optimization of mission architecture, scheduling, and system performance using AI-driven approaches.
Mission design optimization and trade space analysis
Dynamic scheduling and operational modeling
System-level performance optimization
Integration with mission planning and flight operations
Expanded Technical Capabilities
Engineering depth for precision missions.
From optical design through integration and mission operations, the team works end-to-end with systems that have to perform in flight.
Optical system design and end-to-end performance modeling
Stray light analysis, tolerancing, and error budgeting
Detector, focal plane, and sensor integration
Spectrograph, image slicer, and calibration system design
Adaptive optics and high-resolution imaging instrumentation
Optomechanical system design and structural integration
Precision mechanisms and motion control systems
Thermal, structural, and vibrational analysis (FEA)
Cryogenic systems and environmental design considerations
Precision fabrication coordination and build readiness
Assembly, alignment, and optical metrology planning
Environmental testing and qualification support
System-level performance validation and verification
Ground test campaigns and calibration execution
Integration readiness and flight acceptance support
Mission concept development and architecture trades
Payload definition and spacecraft interface integration
System requirements development and flow-down
End-to-end payload lifecycle from concept to flight
Multi-mission compatibility across LEO, cislunar, and deep space
Payload systems for LEO, commercial space stations, and ISS platforms
Remote sensing and Earth observation instrumentation
Life sciences and materials research payload systems
Human spaceflight and habitation research systems
Robotics and autonomous system integration
Proposal leadership, scientific and technical volume development
Capture strategy, teaming, and program positioning
Science team coordination and cross-institution alignment
Technical program management across mission phases
Execution as prime or supporting partner on mission programs